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Site-dependent charge transfer at the Pt(111)-ZnPc interface and the effect of iodine

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posted on 2024-07-09, 23:30 authored by Sareh Ahmadi, Björn Agnarsson, Ieva Bidermane, Bastian M. Wojek, Quentin Noël, Chenghua SunChenghua Sun, Mats Göthelid
The electronic structure of ZnPc, from sub-monolayers to thick films, on bare and iodated Pt(111) is studied by means of X-ray photoelectron spectroscopy, X-ray absorption spectroscopy, and scanning tunneling microscopy. Our results suggest that at low coverage ZnPc lies almost parallel to the Pt(111) substrate, in a non-planar configuration induced by Zn-Pt attraction, leading to an inhomogeneous charge distribution within the molecule and an inhomogeneous charge transfer to the molecule. ZnPc does not form a complete monolayer on the Pt surface, due to a surface-mediated intermolecular repulsion. At higher coverage ZnPc adopts a tilted geometry, due to a reduced molecule-substrate interaction. Our photoemission results illustrate that ZnPc is practically decoupled from Pt, already from the second layer. Pre-deposition of iodine on Pt hinders the Zn-Pt attraction, leading to a non-distorted first layer ZnPc in contact with Pt(111)-I(√3×√3) or Pt(111)-I(√7×√7), and a more homogeneous charge distribution and charge transfer at the interface. On increased ZnPc thickness iodine is dissolved in the organic film where it acts as an electron acceptor dopant.

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ISSN

0021-9606

Journal title

Journal of Chemical Physics

Volume

140

Issue

17

Article number

article no. 174702

Pagination

1 p

Publisher

AIP Publishing

Copyright statement

Copyright © 2014 AIP Publishing LLC. The published version of the article is reproduced here with permission of the publisher. It may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared inThe Journal of Chemical Physics and may be found at https://doi.org/10.1063/1.4870762.

Language

eng

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